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2023
Parisien M-A, Barber QE, Bourbonnais ML, et al. Abrupt, climate-induced increase in wildfires in British Columbia since the mid-2000s. Nature. 2023;4(309). Available at: https://www.nature.com/articles/s43247-023-00977-1.PDF icon s43247-023-00977-1.pdf (5.58 MB)
Turco M, Abatzoglou JT, Herrera S, et al. Anthropogenic climate change impacts exacerbate summer forest fires in California. PNAS. 2023;120.PDF icon Anthropogenic climate change impacts exacerbate summer forest fires in California.pdf (605.57 KB)
Johnson MM, Garcia-Menendez F. A comparison of smoke modelling tools used to mitigate air quality impacts from prescribed burning. International Journal of Wildland Fire. 2023.PDF icon A comparison of smoke modelling tools used to mitigate air quality impacts from prescribed burning.pdf (2.71 MB)
McFayden CB, Johnston LM, Woolford DG, et al. A Conceptual Framework for Knowledge Exchange in a Wildland Fire Research and Practice Context. Applied Data Science. 2023. Available at: https://link.springer.com/chapter/10.1007/978-3-031-29937-7_12.
McFayden CB, Johnston LM, Woolford DG, et al. A Conceptual Framework for Knowledge Exchange in a Wildland Fire Research and Practice Context. Applied Data Science. 2023. Available at: https://link.springer.com/chapter/10.1007/978-3-031-29937-7_12.
McFayden CB, Johnston LM, Woolford DG, et al. A Conceptual Framework for Knowledge Exchange in a Wildland Fire Research and Practice Context. Applied Data Science. 2023. Available at: https://link.springer.com/chapter/10.1007/978-3-031-29937-7_12.
Jose E, Agarwal P, Zhuang J. A data‐driven analysis and optimization of the impact of prescribed fire programs on wildfire risk in different regions of the USA. Natural Hazards. 2023.PDF icon A data-driven analysis and optimization of the impact of prescribed fire programs on wildfire risk in different regions of the USA.pdf (2.13 MB)
McDanold JS, Linn RR, Jonko AK, et al. DUET - Distribution of Understory using Elliptical Transport: A mechanistic model of leaf litter and herbaceous spatial distribution based on tree canopy structure. Ecological Modelling. 2023;483.
Johnson BR, Ager AA, Evers CR, et al. Exploring and Testing Wildfire Risk Decision-Making in the Face of Deep Uncertainty. Fire. 2023;6(7).PDF icon fire-06-00276-v3.pdf (6.02 MB)
Wheatley M, Cotton-Gagnon A, Boucher J, et al. Exploring the impact of airtanker drops on in-stand temperature and relative humidity. International Journal of Wildland Fire. 2023.PDF icon Exploring the impact of airtanker drops on in-stand temperature and relative humidity.pdf (2.74 MB)
Ott JE, Kilkenny FF, Jain TB. Fuel treatment effectiveness at the landscape scale: a systematic review of simulation studies comparing treatment scenarios in North America. Fire Ecology. 2023;19. Available at: https://fireecology.springeropen.com/articles/10.1186/s42408-022-00163-2.PDF icon Fuel treatment effectiveness at the landscape scale: a systematic review of simulation studies comparing treatment scenarios in North America.pdf (5.01 MB)
Jenkins JS, Abatzoglou JT, Rupp DE, Fleishman E. Human and climatic influences on wildfires ignited by recreational activities in national forests in Washington, Oregon, and California. Environmental Research Communications. 2023;5.PDF icon Jenkins_2023_Environ._Res._Commun._5_095002.pdf (1.19 MB)
Urza AK, Hanberry BB, Jain TB. Landscape‑scale fuel treatment effectiveness: lessons learned from wildland fire case studies in forests of the western United States and Great Lakes region. Fire Ecology. 2023;19(1).PDF icon Urza et al_2023_FireEcol_Landscape‑scale fuel treatment effectiveness- lessons learned from wildland fire case studies in forests of the western United States and Great Lakes region.pdf (1.27 MB)
Whelton AJ, Seidel C, Wham BP, et al. The Marshall Fire: Scientific and policy needs for water system disaster response. AWWA Water Science. 2023;5(1).PDF icon AWWA_2023_Whelton_Marshall_Fire.pdf (2.23 MB)
Jaffe MR, Kreider MR, Affleck DLR, et al. Mesic mixed-conifer forests are resilient to both historical high-severity fire and contemporary reburns in the US Northern Rocky Mountains. Forest Ecology and Management. 2023;545.
Greenler SM, Dunn CJ, Johnston JD, et al. Too hot, too cold, or just right: Can wildfire restore dry forests of the interior Pacific Northwest?. Plos One. 2023;18(2).PDF icon journal.pone_.0281927.pdf (3.46 MB)
Jung CGyo, Keyser AR, Remy CC, et al. Topographic information improves simulated patterns of post-fire conifer regeneration in the southwest United States. Global Change Biology . 2023.
2022
Weise DR, Johnson TJ, Myers TL, et al. Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns. International Journal of Wildland Fire. 2022;32. Available at: https://www.publish.csiro.au/wf/pdf/WF22079.PDF icon Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns.pdf (2.65 MB)
Kearns EJ, Saah D, Levine CR, et al. The Construction of Probabilistic Wildfire Risk Estimates for Individual Real Estate Parcels for the Contiguous United States. Fire. 2022;5(117).PDF icon Kearns et al_2022_Fire_The Construction of ProbabilisticWildfire Risk Estimates for Individual Real Estate Parcels for US.pdf (7.09 MB)
Jones GM, Vraga EK, Hessburg PF, et al. Counteracting wildfire misinformation. Frontiers in Ecology and the Environment. 2022;20(7):392-390.PDF icon Jones et al_2022_Front in Ecol Env_Counteracting wildfire misinformation.pdf (79.58 KB)
Hood SM, Varner MJ, Jain TB, Kane JM. A framework for quantifying forest wildfire hazard and fuel treatment effectiveness from stands to landscapes. Fire Ecology. 2022;18(33).PDF icon Hood et al_2022_FireEcol_A framework for quantifying forest wildfire hazard and fuel treatment effectiveness from stands to landscapes.pdf (1.84 MB)
Williams PA, Livneh B, McKinnon KA, et al. Growing impact of wildfire on western US water supply. PNAS. 2022;119(10). Available at: https://www.pnas.org/doi/full/10.1073/pnas.2114069119.PDF icon pnas.2114069119.pdf (2.09 MB)
Orysiak J, Młynarczyk M, Piec R, Jakubiak A. Lifestyle and environmental factors may induce airway and systemic inflammation in firefighters. Environmental Science and Pollution Research. 2022;29:73741–73768.PDF icon Orysiak et al_2022_EnviroScieneandPollResearch_Lifestyle and enviro factors may induce airway and systemic inflammation in firefighters.pdf (1.3 MB)
Jones BA, McDermott S, Champ PA, Berrens RP. More smoke today for less smoke tomorrow? We need to better understand the public health benefits and costs of prescribed fire. International Journal of Wildland Fire. 2022;31(10):918–926.PDF icon Jones et al_2022_IJWF_More smoke today for less smoke tomorrow_We need to better understand public health benefits and costs of rx fire.pdf (2.41 MB)
Churchill DJ, Jeronimo SMA, Hessburg PF, et al. Post-fire landscape evaluations in Eastern Washington, USA: Assessing the work of contemporary wildfires. Forest Ecology and Management. 2022;504(2022).PDF icon Churchill et al 2022 (assessing the work of contemporary wildfires).pdf (12.39 MB)

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